4.6 Article

2D Materials as Effective Cantilever Piezoelectric Nano Energy Harvesters

期刊

ACS ENERGY LETTERS
卷 6, 期 6, 页码 2313-2319

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsenergylett.1c00901

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资金

  1. National Key R & D Project from Minister of Science and Technology [2016YFA0202704]
  2. National Natural Science Foundation of China [12002054, 62001031]
  3. China Postdoctoral Science Foundation [2019M660766]
  4. Fundamental Research Funds for the Central Universities [E0E48957]

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The study demonstrates that using a silicon substrate can provide stable support while maintaining effective energy harvesting, offering a new strategy for the application of two-dimensional layered piezoelectric nanomaterials in mechanical energy-harvesting devices.
Two-dimensional (2D) layered piezoelectric nanomaterials are attractive for application in mechanical energy-harvesting devices. In this study, layered 2D nanosheets, h-BN and MX2 (M = Mo or W; X = S, Se, or Te), are deposited on a silicon substrate to form cantilever energy harvesters. Using density functional theory (DFT) and molecular dynamics (MD) calculations, the effect of the substrate for energy harvesting is studied. The substrate provides 2D layers with stable support while maintaining effective energy harvesting. MD results indicate that the electromechanical conversion energy has contributions from piezoelectricity and flexoelectricity, but the latter is negligible due to small strain gradients for bending-operated nanoharvesters. It is shown that the out-of-plane piezoelectric constants are substantially larger than their in-plane piezoelectric counterparts. The output power is calculated for a substrate-supported nanogenerator. This work provides an atomistic study of piezoelectricity and a new strategy to implement 2D materials in nano energy harvesters.

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